(19)
(11) EP 0 425 709 B1

(12) EUROPEAN PATENT SPECIFICATION

(45) Mention of the grant of the patent:
13.08.1997 Bulletin 1997/33

(21) Application number: 90907465.0

(22) Date of filing: 19.05.1990
(51) International Patent Classification (IPC)6A01N 47/14, A01N 43/78, A01N 37/34, A01N 37/18, D06M 13/248, D06M 15/227, A01K 75/00
(86) International application number:
PCT/JP9000/641
(87) International publication number:
WO 9014/011 (29.11.1990 Gazette 1990/27)

(54)

UNDERSEA ANTIFOULING AGENT

MITTEL GEGEN UNTERWASSERBEWUCHS

AGENT ANTIFOULING SOUS-MARIN


(84) Designated Contracting States:
GB

(30) Priority: 19.05.1989 JP 126436/89
23.04.1990 JP 107100/90

(43) Date of publication of application:
08.05.1991 Bulletin 1991/19

(73) Proprietor: NIPPON OIL AND FATS COMPANY, LIMITED
Chiyoda-ku Tokyo 100 (JP)

(72) Inventors:
  • KADOTA, Osamu
    Osaka 560 (JP)
  • TSURUMI, Kouichiroh
    Mishima-gun Osaka 618 (JP)
  • ISHIMOTO, Makoto
    Osaka 560 (JP)
  • HONDA, Yoshihiro
    Hyogo 666-01 (JP)

(74) Representative: Coxon, Philip et al
Eric Potter & Clarkson St. Mary's Court St. Mary's Gate
Nottingham NG1 1LE
Nottingham NG1 1LE (GB)


(56) References cited: : 
FR-A- 2 357 623
JP-A- 5 634 604
JP-A-56 118 006
GB-A- 573 079
JP-A- 5 818 304
   
  • DATABASE JAPS, vol. 9, no. 166 (C-290)
  • DATABASE WPIL, accession no. 84-285352 [46], Derwent Publications Ltd, London, GB
   
Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention).


Description

TECHNICAL FIELD



[0001] This invention relates to a novel undersea antifouling treating composition for treating a fibrous or rope-like material to be immersed in sea.

BACKGROUND ART



[0002] Fish nets for culturing, trapping and the like immersed in sea for a long time and materials such as rope and the like supporting these nets, a net for preventing invasion of jellyfishes at an intake port for cooling water, a curtain for the prevention of marine pollution used in seaside working and the like are immersed in sea over a long period of time.

[0003] As a result, they are fouled by sessile organisms in sea to cause problems such as clogging of mesh in the net, infection of various fishes with sickness or parasite due to the decrease of flowing quantity of sea water, damage by the increase of weight, decrease of floating force and the like.

[0004] As a method of preventing the fouling through such sessile organisms, there has hitherto been widely used an undersea antifouling treating composition containing an organic tin compound such as TBT (tributyl tin compound) or the like as an effective ingredient. However, the tendency of self-control in use or the like is widening from a doubt of storing the effective ingredient in circumstance or the like.

[0005] On the other hand, as an antifouling treating composition containing no organic tin compound, there are disclosed a) a technique using a dialkylpolysulfide compound as an effective ingredient in Japanese Patent Application Publication No. 62-43962 corresponding to Japanese Patent laid open No. 56-34604, and b) a technique on an antifouling treating composition for fish nets, wherein the composition has the formula of comparative example 1 below, in Japanese Patent laid open No. 60-38306, respectively.

[0006] Apart from the above techniques, the inventors have proposed c) a technique on an undersea antifouling treating composition containing a copolymer indicating a particular hydrophilic property and thiocyano alkylthiobenzohetrozole in Japanese Patent laid open No. 1-178562.

[0007] However, the effective antifouling performances can not be obtained only by the dialkylpolysulfide compound disclosed as the above technique a, while the tetraalkyl thiuram disulfide, dialkylpolysulfide and 2-(thiocyanomethylthio) benzothiazole disclosed as the above technique b shortly show effective antifouling performances, but it is very difficult to elute a sufficient amount of the effective ingredient from the fish net treating agent over a long period of time. Further, it has been confirmed that only the copolymer indicating the particular hydrophilic property and the thiocyano alkylthiobenzohetrozole previously proposed by the inventors as the above technique c are still insufficient to maintain the effective antifouling performances over a long period of time.

[0008] An object of the invention is to provide an undersea antifouling treating composition which can necessarily and sufficiently control the eluting rate of an antifouling agent from the fibrous or rope-like materials immersed in sea over a long period of time.

DISCLOSURE OF THE INVENTION



[0009] The inventors have made various studies in order to achieve the above object and found that dialkylpolysulfide or dialkylpolysulfide and polybutene are added as an eluting controller to an undersea antifouling treating composition comprising a particular antifouling agent and a resin as well as various film forming substances, whereby the eluting rate of the above antifouling agent can necessarily and sufficiently be controlled over a long period of time, and as a result the invention has been accomplished.

[0010] That is, the invention is concerned with an undersea antifouling treating composition as set out in claim 1.

BEST MODE OF CARRYING OUT THE INVENTION



[0011] An antifouling agent (ingredient A) in the undersea antifouling treating composition according to the invention is at least one of 2-(thiocyanomethylthio) benzothiazole, tetraethylthiuram disulfide, 2,4,5,6-tetrachloro-1,3-dicyanobenzene, N-(ethylmethylphenyl)-dichloromaleimide and N-(diethylphenyl)-dichloromaleimide. All of these agents are well-known as an antifouling agent having a low toxicity.

[0012] As a film forming agent (ingredient B) in the undersea antifouling treating composition according to the invention, mention may be made of natural resin for general-purpose paint, rosin, modified rosin, fatty acid, oily varnishes usually used, synthetic rubber, chlorinated rubber, polyvinyl chloride, styrene-butadiene copolymer, acrylic resin and the like. Furthermore, acrylic hydrophilic polymers synthesized by using particular hydrophilic monomers as mentioned in the following production examples are preferably used.

[0013] An eluting controller (ingredient C) in the undersea antifouling treating composition according to the invention is at least one of dialkylpolysulfides represented by the following general formula (1);

        R1 - (S)n - R2     (1)

(wherein each of R1, R2 is an alkyl group having a carbon number of 1 to 20 and n is an integer of 1-5). This is generally used as a high-pressure additive for cutting oil and is a substance showing no inhibition action to organisms. As a concrete example, there are mentioned di-t-nonyl pentasulfide (specific gravity: 1.03), di-t-dodecyl pentasulfide (specific gravity: 1.55) and the like.

[0014] Another eluting controller (ingredient D) in the undersea antifouling treating composition according to the invention is a polybutene having a polymerization degree of 2-100. This is generally used as a resin softening agent, a sizing agent or other and is a substance showing no inhibition action to organisms. As a concrete example, there are mentioned various Nissan Polybutenes (polybis) such as Polybutene 06N, Polybutene 15N (made by Nippon Oil and Fats Co., Ltd.) and so on.

[0015] As the amount of each ingredient used in the undersea antifouling treating composition according to the invention, the ratio occupied in the treating composition is 0.3-60% by weight, preferably 0.5-50% by weight in the ingredient A, 3-60% by weight, preferably 5-30% by weight in the ingredient B and 1-30% by weight, preferably 2-25% by weight in the ingredient C, and further 1-30% by weight, preferably 2-25% by weight in the ingredient D in the treating composition of the invention.

[0016] When the amount of the ingredient A is less than the above value, the antifouling property is lacking, while when it is too large, the formation of the coating is difficult. When the amount of the ingredient B is too small, the formation of the coating is difficult, while when it is too large, the antifouling property is lacking and the function of eluting control lowers. When the amount of the ingredient C is too small, the function of eluting control lowers, while when it is too large, the function of eluting control also lowers and the formation of the coating is difficult. When the amount of the ingredient D is too large, the function of eluting control lowers and the formation of the coating is difficult.

[0017] In the undersea antifouling treating composition according to the invention, various additives such as organic solvent, other antifouling agent, colorant, thixotropic agent, antifoaming agent, thickening agent, plasticizer and the like may be added, if necessary, in addition to the above ingredients A-D.

[0018] As the organic solvent, toluene, xylene, solvent naphtha, pseudocumene, acetone, methyl ethyl ketone, methyl isobutyl ketone, ethyl acetate, butyl acetate, ethyl cellosolve, butyl cellosolve and the like may be used alone or in admixture thereof.

[0019] In order to improve the antifouling property, the other antifouling agent such as N-t-butyl-N'-cyclopropyl-6-(methylthio)-1,3,5-triazine-2,4-diamine, 3-(3,4-dichlorophenyl)-1,1-dimethylyrea, N,N-dimethyl-N'-phenyl-N'-(fluorodichloromethylthio) sulfamide, N,N-dimethyl-N'-tolyl-N'-(fluorodichloromethylthio) sulfamide, N-(fluorodichloromethylthio) phthalimide, cuprous oxide, organotin compound, zinc dimethyldithiocarbamate, copper diethyldithiocarbamate and the like may be added within a range of damaging no effect of the invention.

[0020] The undersea antifouling treating composition comprising the ingredients A-D according to the invention is usually prepared by dissolving the above ingredients in an organic solvent by means of a dissolver or the like. The prepared undersea antifouling treating composition is immersed in a material to be treated.

[0021] The invention will be concretely described with reference to production examples, examples, and comparative examples. In the examples, part and % are by weight.

Production Examples 1-3



[0022] Into a flask provided with a stirrer were charged solvent 1, unit B1, unit B2 and catalyst 1 according to a compounding recipe shown in Table 1, and temperature was raised to 100°C for 30 minutes with stirring and further the stirring was continued at the same temperature for 2 hours. Then, a mixed solution of additional solvent 2 and catalyst 2 was added dropwise over 1 hour, and the stirring was continued at 105°C for 2 hours and at 120°C for 1 hour.

[0023] Finally, a diluent was added and homogenized to obtain each of three transparent hydrophilic copolymer solutions. The solid content, viscosity and molecular weight of the polymer solution were shown in Table 1.
Table 1
  Production Example 1 Production Example 2 Production Example 3
Solvent 1 xylene 60 60 60
Unit B1 ethoxypentadecaethylene glycol methacrylate 10    
methoxytricosaethylene glycol methacrylate 5   2
2-methoxyethyl acrylate     3
propioxytetradiethylene glycol methacrylate   21.5  
2-acetoxyethyl acrylate   21.4  
Unit B2 methyl methacrylate 35 30 50
methyl n-butyl methacrylate 50 22.1  
2-ethylhexyl acrylate     45
styrene   5  
Catalyst 1 t-butylperoxy-2-ethylhexanoate 1.5    
benzoyl peroxide   1.5 1.5
Catalyst 2 t-butylperoxy-2-ethyl hexanoate 0.5    
benzoyl peroxide   1.5 1.5
Solvent 2 xylene 20 20 20
Diluent xylene 20 20 20
Property value viscosity (poise/20 degree) 1.3 1.0 1.2
solid content (weight %)      
62.0 49.2 48.8
weight average molecular weight      
73,000 23,000 28,000

Examples 1-18 and Comparative Examples 1-26


〈Preparation of undersea antifouling treating composition〉



[0024] Various treating compositions of Examples and Comparative Examples were prepared by charging all ingredients into a beaker according to a compounding recipe shown in Table 2 and stirring and dissolving them by means of a dissolver.







[0025] The test for antifouling property through immersion in sea and the measurement on an amount of antifouling agent eluted were made with respect to the above prepared treating compositions of examples and Comparative Examples. The results were shown in Table 3.

〈Test for antifouling property〉



[0026] A specimen of 20 cm in width and 40 cm in length cut out from a polyethylene fish net for culture fishpond (32 nets, 6 knots) was immersed in each of the undersea antifouling treating compositions of Examples and Comparative examples and then dried in air for 48 hours. The fish net treated by the above method was immersed at a position of 1.5 m beneath water surface in Aioi port of Hyogo prefecture, and then the fouled state through sessile organisms was examined over 6 months. The results of the test for antifouling property were evaluated at the following five stages.

5: no fouling of sessile organisms.

4: area of sessile organisms fouled to the fish net is less than 5%.

3: area of sessile organisms fouled to the fish net is not less than 5% but less than 15%.

2: area of sessile organisms fouled to the fish net is not less than 15% but less than 50%.

1: area of sessile organisms fouled to the fish net is not less than 50%.


〈Amount of antifouling agent eluted〉



[0027] The same fish net as used in the test for antifouling property was impregnated with the treating composition in the same manner and immersed in sea. After 6 months, the fish net was taken out from sea and placed in a beaker containing 1 litre of sea water for 1 hour to elute the antifouling agent. The sea water containing the eluted antifouling agent was analyzed by a liquid chromatography to measure the amount of the antifouling agent eluted. The eluted amount was indicated as a concentration of the antifouling agent eluted in 1 litre of sea water (ppm).



[0028] As seen from Table 3, in Examples 1 to 15, no fouling of sessile organisms was observed even in the test for antifouling property for 6 months, and the eluted amount of the antifouling agent of 0.09 ppm was maintained even after 6 months.

[0029] On the other hand, in the comparative examples, the remarkable fouling of sessile organisms is observed and the eluted amount of the antifouling agent after 6 months clearly decreases, from which it is clear that the undersea antifouling treating composition according to the invention is excellent.

INDUSTRIAL APPLICABILITY



[0030] In the fibrous or rope-like materials treated with the undersea antifouling treating agent containing the ingredient C or further the ingredient D according to the invention and immersed in sea, the eluting rate of the ingredient A as an antifouling agent is adequately controlled, so that the antifouling effect can be maintained over a long period of time, which has never been attained in the conventional technique.


Claims

1. An undersea antifouling treating composition comprising:

A) 0.3-60% by weight of the composition of at least one of 2-(thiocyanomethylthio) benzothiazole, tetraethylthiuram disulfide, 2,4,5,6-tetrachloro-1,3-dicycanobenzene, N-(ethylmethylphenyl)-dichloromaleimide and N-(diethylphenyl)-dichloromaleimide,

B) 3-60% by weight of the composition of a film forming substance;

C) 1-30% by weight of the composition of at lease one of dialkylpolysulfides represented by the following general formula (1);

        R1 - (S)n - R2     (1)

(wherein each of R1, R2 is an alkyl group having a carbon number of 1 to 20 and n is an integer of 1-5), and

D) 1-30% by weight of the composition of polybutene having a polymerization degree of 2-100.


 
2. The composition of claim 1 comprising 0.5-50% by weight of the composition of ingredient A.
 
3. The composition of Claim 1 or 2 comprising 5-30% by weight of the composition of ingredient B.
 
4. The composition of any preceding claim comprising 2-25% by weight of the composition of ingredient C.
 
5. The composition of any preceding claim comprising 2-25% by weight of the composition of ingredient D.
 


Ansprüche

1. Anwuchsverhinderndes Unterwasserbehandlungsmittel, das aufweist:

A) 0,3 bis 60 Gewichtsprozent des Mittels von mindestens einer der Substanzen 2-(Thiozyanmethylthio)benzothiazol, Tetraethylthiuramdisulfid, 2,4,5,6-Tetrachlor-1,3-dizyanbenzen, N-(Ethylmethylphenyl)-dichlormaleimid und N-(Diethylphenyl)-dichlormaleimid,

B) 3 bis 60 Gewichtsprozent des Mittels von einer filmbildenden Substanz,

C) 1 bis 30 Gewichtsprozent des Mittels von mindestens einem Dialkylpolysulfid, das durch die nachstehende Allgemeinformel (1) wiedergegeben wird:

        R1 -(S)n - R2     (1)

(wobei sowohl R1 als auch R2 eine Alkylgruppe mit einer Kohlenstoffzahl von 1 bis 20 und n eine ganze Zahl von 1 bis 5 ist) und

D) 1 bis 30 Gewichtsprozent des Mittels von Polybuten mit einem Polymerisationsgrad von 2 bis 100.


 
2. Mittel nach Anspruch 1, das 0,5 bis 50 Gewichtsprozent des Mittels von dem Bestandteil A aufweist.
 
3. Mittel nach Anspruch 1 oder 2, das 5 bis 30 Gewichtsprozent des Mittels von dem Bestandteil B aufweist.
 
4. Mittel nach einem der voranstehenden Ansprüche, das 2 bis 25 Gewichtsprozent des Mittels von dem Bestandteil C aufweist.
 
5. Mittel nach einem der voranstehenden Ansprüche, das 2 bis 25 Gewichtsprozent des Mittels von dem Bestandteil D aufweist.
 


Revendications

1. Composition de traitement anti-salissure sous-marine comprenant :

A) 0,3 à 60 % en poids de la composition d'au moins l'une de : 2-(thiocyanométhylthio)benzothiazole, disulfure de tétraéthylthiuram, 2,4,5,6-tétrachloro-1,3-dicycanobenzène, N-(éthylméthylphényl)dichloromaléimide et N-(diéthylphényl)dichloromaléimide,

B) 3 à 60 % en poids de la composition d'une substance formatrice de film ;

C) 1 à 30 % en poids de la composition d'au moins l'un des polysulfures de dialkyle représentés par la formule générale (1) suivante ;

        R1 - (S)n - R2     (1)

   (dans laquelle chacun de R1, R2 est un groupe alkyle comportant un nombre de carbone de 1 à 20 et n est un nombre entier de 1 à 5), et

D) 1 à 30 % en poids de la composition de polybutène ayant un degré de polymérisation de 2 à 100.


 
2. Composition selon la revendication 1, comprenant 0,5 à 50 % en poids de la composition de l'ingrédient A.
 
3. Composition selon la revendication 1 ou 2, comprenant 5 à 30 % en poids de la composition de l'ingrédient B.
 
4. Composition selon l'une quelconque des revendications précédentes, comprenant 2 à 25 % en poids de la composition de l'ingrédient C.
 
5. Composition selon l'une quelconque des revendications précédentes, comprenant 2 à 25 % en poids de la composition de l'ingrédient D.